A power take-off unit synchronizer decouples the secondary driveline from primary input, eliminating parasitic rotation losses and improving fuel efficiency.
Analyzing flow rate waveform features detects suction conditions in implantable blood pumps, preventing ventricular collapse and maintaining stable circulation.
A mechanical coupling control system switches operating modes to manage torque transmission capacity.
Mechanical circulatory assist system enables simultaneous connection of multiple patient interface modules for seamless control transfer.
Remote controller updating system for implantable blood pumps uses magnetic coupling to maintain continuous operation during firmware updates.
An implantable blood pump adjusts its pumping protocol by sensing electrical pulses from a cardiac rhythm management device.
Integrated UV emitters on a driveline sterilize the skin interface, preventing infection risks associated with percutaneous power transmission.
Redundant battery packs in a hinged housing prevent simultaneous disconnection, resolving the contradiction between device complexity and reliability.
A renal pump catheter delivers pressurized blood flow to restore kidney perfusion pressure and enhance renal function.
A servo controller adjusts driving force distribution using theoretical rotational speed values calculated from vehicle dynamics parameters.
A differential lock control method for commercial vehicles uses engine power and wheel slip data to manage traction.